基于 ICT 图像与设计模型的制造误差检测方法
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TP391 TH74

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重庆市自然科学基金项目(cstc2016jcyjA0353)、重庆市技术创新与应用发展项目(cstc2019jscx-msxmX0058)资助


Manufacturing error detection method based on ICT image and design model
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    摘要:

    使用二维 CT 图像与设计模型通过比对进行制造误差分析时,必须知道 CT 图像在设计模型中的位置,而位置的确定 往往需要在工件上找到一个和设计模型相匹配的基准位置,并对该位置进行精加工,这增加了工件加工的周期和制造成本。 针对该问题,本文提出一种自动搜索 CT 图像的设计模型来完成工件制造误差检测的方法。 该方法首先提取 CT 图像的边 缘,然后把点云设计模型分层切片;接着通过 Hu 矩匹配,ICP 配准自动搜索到与 CT 图像相匹配的点云切片;最终根据两者 的配准结果,计算工件误差分布,完成工件的制造误差检测。 为验证该方法的可行性,采用已知尺寸的标准工件进行检测, 结果表明,检测误差集中分布在 0 ~ 0. 25 pixel 之间,具有较高的检测精度。 并对两个实际工件进行检测,验证了该方法的适 用性。 本文在无须确定工件基准位置的情况下,使用工件二维 CT 图像与设计模型完成工件的制造误差计算、分析与显示, 具有很高的实用意义。

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    When the two-dimensional CT image and the design model are used to analyze the manufacturing error, it requires the position of CT image in the design model. To determine the position, it needs to find a reference position matching the design model on the workpiece. Then, the machining the position needs to be manufactured, which increases the processing cycle and manufacturing cost of the workpiece. To address this issue, this study proposes an automatic search CT image design model to complete the workpiece manufacturing error detection method. Firstly, the edge of CT image is extracted. Secondly, the point cloud design model is sliced layer by layer. Then, through Hu moment matching, ICP registration automatically searches the point cloud slices that match the CT image. Finally, according to the registration results, the error distribution of the workpiece is calculated, and the manufacturing error detection of the workpiece is completed. To evaluate the feasibility of this method, the standard workpiece with known size is used for detection. Experimental results show that the detection error is concentrated between 0~ 0. 25 pixel, which has high detection accuracy. Two actual workpieces are tested to evaluate the applicability of the method. In this study, without the need to determine the benchmark position of the workpiece, the two-dimensional CT image and design model of the workpiece are used to realize the calculation, analysis and display of the manufacturing error of the workpiece, which has high practical significance.

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张子龙,沈 宽.基于 ICT 图像与设计模型的制造误差检测方法[J].仪器仪表学报,2021,(3):251-261

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  • 在线发布日期: 2023-06-28
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